Brain Sciences (May 2024)

Unraveling the Influence of Litter Size, Maternal Care, Exercise, and Aging on Neurobehavioral Plasticity and Dentate Gyrus Microglia Dynamics in Male Rats

  • Lane Viana Krejcová,
  • João Bento-Torres,
  • Daniel Guerreiro Diniz,
  • Antonio Pereira,
  • Manuella Batista-de-Oliveira,
  • Andreia Albuquerque Cunha Lopes de Morais,
  • Rosângela Figueiredo Mendes-da-Silva,
  • Ricardo Abadie-Guedes,
  • Ângela Amâncio dos Santos,
  • Denise Sandrelly Lima,
  • Rubem Carlos Araujo Guedes,
  • Cristovam Wanderley Picanço-Diniz

DOI
https://doi.org/10.3390/brainsci14050497
Journal volume & issue
Vol. 14, no. 5
p. 497

Abstract

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This study explores the multifaceted influence of litter size, maternal care, exercise, and aging on rats’ neurobehavioral plasticity and dentate gyrus microglia dynamics. Body weight evolution revealed a progressive increase until maturity, followed by a decline during aging, with larger litters exhibiting lower weights initially. Notably, exercised rats from smaller litters displayed higher body weights during the mature and aged stages. The dentate gyrus volumes showed no significant differences among groups, except for aged sedentary rats from smaller litters, which exhibited a reduction. Maternal care varied significantly based on litter size, with large litter dams showing lower frequencies of caregiving behaviors. Behavioral assays highlighted the detrimental impact of a sedentary lifestyle and reduced maternal care/large litters on spatial memory, mitigated by exercise in aged rats from smaller litters. The microglial dynamics in the layers of dentate gyrus revealed age-related changes modulated by litter size and exercise. Exercise interventions mitigated microgliosis associated with aging, particularly in aged rats. These findings underscore the complex interplay between early-life experiences, exercise, microglial dynamics, and neurobehavioral outcomes during aging.

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